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Stochastic nonlinear free vibration analysis of elastically supported functionally graded materials plate with system randomness in thermal environment

机译:热环境中具有系统随机性的弹性支撑功能梯度材料板随机非线性自由振动分析

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摘要

This paper presents the stochastic nonlinear free vibration response of elastically supported functionally graded materials (FGMs) plate resting on two parameter Pasternak foundation having Winkler cubic non-linearity with random system properties subjected to uniform and nonuniform temperature changes with temperature independent (TID) and dependent (TD) material properties. System properties such as material properties of each constituent's material, volume fraction index and foundation parameters are taken as independent random input variables. The basic formulation is based on higher order shear deformation theory (HSDT) with von-Karman nonlinear strains using modified C° continuity. A direct iterative based nonlinear finite element method in conjunction with first order perturbation technique (FOPT) developed by last two authors for the composite plate is extended for FGM plate to compute the second order statistics (mean and coefficient of variation) of the nonlinear fundamental frequency. The present outlined approach has been validated with those results available in the literature and independent Monte Carlo simulation (MCS).
机译:本文提出了弹性支撑的功能梯度材料(FGMs)板的随机非线性自由振动响应,该板基于具有Winkler立方非线性和随机系统性质的两个参数Pasternak基础,受温度独立(TID)和相关的均匀和非均匀温度变化的影响(TD)材料属性。系统特性(例如每种成分的材料的材料特性,体积分数指数和基础参数)被视为独立的随机输入变量。基本公式是基于高阶剪切变形理论(HSDT),其具有使用修正的C°连续性的von-Karman非线性应变。将基于直接迭代的非线性有限元方法与最后两位作者针对复合板开发的一阶扰动技术(FOPT)相结合,扩展到FGM板,以计算非线性基频的二阶统计量(均值和变异系数) 。本概述的方法已通过文献和独立的蒙特卡洛模拟(MCS)中提供的那些结果进行了验证。

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